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Relations between y+ Value and Adaptive Computation Result for Manufacturing Bottles

机译:制造瓶的Y +值与自适应计算结果之间的关系

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Energy-saving and faster manufacturing techniques are essential requirements for the ideal production of polyethylene terephthalate (PET) bottles. The establishment of accurate calculation skills strengthens a quality working environment for improving manufacturing technology. We applied the adaptive finite element method and calculated the time-dependent SST (shear stress transport), k-ω, k-ε and LES (large eddy simulation) models to predict the airflow field around the PET bottles in a heating box. The computation of the flow field was performed using software COMSOL 5.5 (COMSOL Inc., Palo Alto, CA). The experimental data are acquired to compare with simulation results in terms of calculation accuracy. Computational fluid dynamics (CFD) results showed that error for the velocity and pressure of the flow field at specific positions in the vicinity of the preform was satisfied. The error estimation on the main physical quantity helps calculate other physical quantities. The variation trend of y+ values near the bottle surface had an identical trend alongside the gird concentration trend during the adaptive computation process. This study reveals that the outcome of the adaptive computation method and its underlying theories satisfy the physical requirements in this case.
机译:节能和更快的制造技术是对苯二甲酸乙二醇酯(PET)瓶的理想生产的必要要求。建立准确的计算技能,加强了提高制造技术的优质工作环境。我们应用了自适应有限元方法,并计算了时间依赖的SST(剪切应力传输),K-ω,K-ε和LES(大涡模拟)模型,以预测加热箱中PET瓶周围的气流场。使用软件COMSOL 5.5(COMSOL Inc.,Palo Alto,CA)进行流场的计算。获取实验数据以与计算精度的仿真结果进行比较。计算流体动力学(CFD)结果表明,满足预制件附近的比位置处的流场的速度和压力的误差。主物理量的误差估计有助于计算其他物理量。在自适应计算过程中,瓶表面附近的Y +值的变化趋势具有相同的趋势。本研究表明,在这种情况下,自适应计算方法及其潜在理论的结果满足了物理要求。

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